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Hein, Elisabeth; Moore, Cathleen M. – Journal of Experimental Psychology: Human Perception and Performance, 2012
We live in a dynamic environment in which objects change location over time. To maintain stable object representations the visual system must determine how newly sampled information relates to existing object representations, the "correspondence problem". Spatiotemporal information is clearly an important factor that the visual system takes into…
Descriptors: Motion, Spatial Ability, Visual Perception, Stimuli
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Wagemans, Johan; Feldman, Jacob; Gepshtein, Sergei; Kimchi, Ruth; Pomerantz, James R.; van der Helm, Peter A.; van Leeuwen, Cees – Psychological Bulletin, 2012
Our first review article (Wagemans et al., 2012) on the occasion of the centennial anniversary of Gestalt psychology focused on perceptual grouping and figure-ground organization. It concluded that further progress requires a reconsideration of the conceptual and theoretical foundations of the Gestalt approach, which is provided here. In…
Descriptors: Brain, Stimulation, Psychology, Science Instruction
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Dalvit, Silvia; Eimer, Martin – Journal of Experimental Psychology: Human Perception and Performance, 2011
Previous research has shown that the detection of a visual target can be guided not only by the temporal integration of two percepts, but also by integrating a percept and an image held in working memory. Behavioral and event-related brain potential (ERP) measures were obtained in a target detection task that required temporal integration of 2…
Descriptors: Intervals, Short Term Memory, Eye Movements, Stimuli
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Greene, Deanna J.; Zaidel, Eran – Neuropsychologia, 2011
Research points to a right hemisphere bias for processing social stimuli. Hemispheric specialization for attention shifts cued by social stimuli, however, has been rarely studied. We examined the capacity of each hemisphere to orient attention in response to social and nonsocial cues using a lateralized spatial cueing paradigm. We compared the…
Descriptors: Brain Hemisphere Functions, Cues, Intervals, Stimuli
Grondin, S.; Girard, C. – Brain and Cognition, 2005
The purpose of the present study was to identify differences between cerebral hemispheres for processing temporal intervals ranging from .9 to 1.4s. The intervals to be judged were marked by series of brief visual signals located in the left or the right visual field. Series of three (two standards and one comparison) or five intervals (four…
Descriptors: Stimuli, Intervals, Brain Hemisphere Functions, Visual Perception
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Gawryszewski, Luiz G.; Carreiro, Luiz Renato R.; Magalhaes, Fabio V. – Psicologica: International Journal of Methodology and Experimental Psychology, 2005
A non-informative cue (C) elicits an inhibition of manual reaction time (MRT) to a visual target (T). We report an experiment to examine if the spatial distribution of this inhibitory effect follows Polar or Cartesian coordinate systems. C appeared at one out of 8 isoeccentric (7[degrees]) positions, the C-T angular distances (in polar…
Descriptors: Stimuli, Reaction Time, Mathematics Activities, Cues